CHAIN GUIDE ASSEMBLY FRAME
20230184311 ยท 2023-06-15
Assignee
Inventors
- Volkmar Nyga (Osaka-shi, JP)
- Seigo Ohsawa (Osaka-shi, JP)
- Sung-Hwan Lim (Osaka-shi, JP)
- Munehiro Maeda (Osaka-shi, JP)
- Yuji Oshima (Osaka-shi, JP)
Cpc classification
F16H2007/185
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H7/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H7/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2007/0897
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2007/0842
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H7/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2007/0893
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/022
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2007/0846
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L2001/0537
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L1/053
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
To provide a simple-structured chain guide assembly frame capable of reliably maintaining a correct positional relationship between a driven sprocket and a sprocket holding portion without the possibility of driven sprocket detachment. The chain guide assembly frame includes a main body having a fixed-guide-side sprocket holding portion and a pivoting-guide-side sprocket holding portion. The fixed-guide-side sprocket holding portion includes a first fixed-guide-side support portion that supports a driven sprocket at a first contact point, and a second fixed-guide-side support portion that supports the driven sprocket at a second contact point located more outside than the first contact point. When the driven sprocket is in an erected state in which the driven sprocket is supported at the first contact point and second contact point, the vector of gravity acting on the gravity center of the driven sprocket points between the first contact point and second contact point.
Claims
1. A chain guide assembly frame comprising a main body and a sprocket holding portion that supports a driven sprocket, the main body including a pivoting chain guide holding portion to which a pivoting chain guide is mountable, and a fixed chain guide, the sprocket holding portion including a fixed-guide-side sprocket holding portion provided on a same side as the fixed chain guide, and a pivoting-guide-side sprocket holding portion provided on a same side as the pivoting chain guide holding portion, the fixed-guide-side sprocket holding portion including at least a first fixed-guide-side support portion that supports the driven sprocket disposed in the fixed-guide-side sprocket holding portion from below at a first contact point, and a second fixed-guide-side support portion that supports the driven sprocket at a second contact point located more outside than the first contact point, a gravity acting on the driven sprocket having a vector that points between the first contact point and the second contact point when the driven sprocket is in an erected state in which the driven sprocket is supported simultaneously by the first fixed-guide-side support portion and the second fixed-guide-side support portion.
2. The chain guide assembly frame according to claim 1, wherein, when the driven sprocket is supported simultaneously by the first fixed-guide-side support portion and the second fixed-guide-side support portion, a force of gravity of the driven sprocket acting on a center of gravity of the driven sprocket and a tension acting from the chain on the driven sprocket sum up to a net force with a vector pointing between the first contact point and the second contact point.
3. The chain guide assembly frame according to claim 1, wherein the first fixed-guide-side support portion has a shape such that the closer to the second fixed-guide-side support portion, the more away from a center of gravity of the driven sprocket supported by the first fixed-guide-side support portion and the second fixed-guide-side support portion.
4. The chain guide assembly frame according to claim 1, wherein the fixed-guide-side sprocket holding portion further includes a third fixed-guide-side support portion that is able to contact the driven sprocket from above, the third fixed-guide-side support portion being configured to be able to contact the driven sprocket when the driven sprocket separates from the second fixed-guide-side support portion and moves a predetermined amount inward of the fixed-guide-side sprocket holding portion.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0020]
[0021]
[0022]
[0023]
DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0024] A chain guide assembly frame 100 according to one embodiment of the present invention will be hereinafter described with reference to the drawings.
[0025] For ease of explanation,
[0026] As shown in
[0027] Mounting holes H1, H2, H3 used when fixing the frame to an engine are provided in various parts of the main body 110.
[0028] The pivoting chain guide 112 is pivotably attached to the pivoting chain guide holding portion 114 via a pivot shaft 113, and configured to be able to press the chain CH passed around the assembly.
[0029] The fixed-guide-side sprocket holding portion 120 is configured to be able to hold a fixed-guide-side driven sprocket S1, and provided with a first fixed-guide-side support portion 121, a second fixed-guide-side support portion 122, and a third fixed-guide-side support portion 123, which are capable of supporting the fixed-guide-side driven sprocket S1 or holding the sprocket between themselves and the chain CH at a specific position.
[0030] The second fixed-guide-side support portion 122 is disposed above the mounting hole H1, the first fixed-guide-side support portion 121 is located more inside than the second fixed-guide-side support portion 122, and the third fixed-guide-side support portion 123 is disposed further inside than the first fixed-guide-side support portion 121.
[0031] The pivoting-guide-side sprocket holding portion 130 is configured to be able to hold a pivoting-guide-side driven sprocket S2, and provided with a first pivoting-guide-side support portion 131 and a second pivoting-guide-side support portion 132, which are capable of supporting the pivoting-guide-side driven sprocket S2 or holding the sprocket between themselves and the chain CH at a specific position.
[0032] The first pivoting-guide-side support portion 131 is located more outside than the second pivoting-guide-side support portion 132.
[0033] The chain CH is passed around to surround the drive sprocket DS, fixed-guide-side driven sprocket S1, and pivoting-guide-side driven sprocket S2, and is passed over each of the top guide 115, fixed chain guide 111, and pivoting chain guide 112.
[0034] Next, how the fixed-guide-side driven sprocket S1 is held by the fixed-guide-side sprocket holding portion 120 of the chain guide assembly frame 100 according to one embodiment of the present invention will be described with reference to
[0035] When the pivoting chain guide 112 applies a pressing force on the chain CH, i.e., presses the chain CH toward the main body 110, the chain CH becomes tensioned by the amount of the pressing force, so that the chain CH presses the drive sprocket DS, fixed-guide-side driven sprocket S1, and pivoting-guide-side driven sprocket S2 inward of the drive sprocket holding portion 135, fixed-guide-side sprocket holding portion 120, and pivoting-guide-side sprocket holding portion 130, respectively, by tension ST.
[0036] At this time, the fixed-guide-side driven sprocket S1 moves slightly inward of the fixed-guide-side sprocket holding portion 120, and comes to a position where it is held between the chain CH and the third fixed-guide-side support portion 123 as shown in
[0037] Therefore, the fixed-guide-side driven sprocket S1 can be held stably and is unlikely to detach from the fixed-guide-side sprocket holding portion 120.
[0038] It is possible to adjust the amount of movement of the fixed-guide-side driven sprocket S1 when it is held between the third fixed-guide-side support portion 123 and the chain CH by changing the protruding amount of the third fixed-guide-side support portion 123, so as to minimize misalignment of the fixed-guide-side driven sprocket S1 when the chain guide assembly is attached to the engine.
[0039] The pivoting-guide-side driven sprocket S2 also moves slightly inward of the pivoting-guide-side sprocket holding portion 130, and comes to a position where it is held between the chain CH and the second pivoting-guide-side support portion 132 as shown in
[0040] Next, the movements of the fixed-guide-side driven sprocket S1 when the pressing force applied to the chain CH by the pivoting chain guide 112 is insufficient are described with reference to
[0041] When the pressing force applied to the chain CH by the pivoting chain guide 112 is insufficient, the chain CH becomes slack to some extent in parts along the top guide 115 and fixed chain guide 111.
[0042] In the case where the pivoting chain guide 112 is not completely separated from the chain CH, the chain CH becomes slack also in the part along the pivoting chain guide 112.
[0043] At this time, as shown in
[0044] When tension ST2 fails to provide a sufficient force for holding the fixed-guide-side driven sprocket S1 between the chain CH and the third fixed-guide-side support portion 123, the fixed-guide-side driven sprocket S1 separates from the third fixed-guide-side support portion 123 and moves outward of the fixed-guide-side sprocket holding portion 120, and comes to contact with the first fixed-guide-side support portion 121 at a first contact point 121a and with the second fixed-guide-side support portion 122 at a second contact point 122a as shown in
[0045] Unless the fixed-guide-side driven sprocket S1 undergoes a change in its shape, the fixed-guide-side driven sprocket S1 comes to contact simultaneously with the first fixed-guide-side support portion 121 and second fixed-guide-side support portion 122 at the first contact point 121a and second contact point 122a, which are each a fixed point.
[0046] The fixed-guide-side driven sprocket S1 here is subjected to the force of gravity SG and tension ST2 of the chain CH, which can each be represented by force vectors from the center of gravity SC of the fixed-guide-side driven sprocket S1.
[0047] If the fixed-guide-side driven sprocket S1 at this time is supported by the first fixed-guide-side support portion 121 and second fixed-guide-side support portion 122 such that the net force MP of gravity SG and tension ST2 of the chain CH is directed toward a point between the first contact point 121a and the second contact point 122a as shown in
[0048] The positions of the first contact point 121a and second contact point 122a can be changed as required by making changes to the shapes of the first fixed-guide-side support portion 121 and second fixed-guide-side support portion 122. In the case where the second fixed-guide-side support portion 122 is formed near the mounting hole H1, for example, to make the positions of the first contact point 121a and second contact point 122a adjustable, only the first fixed-guide-side support portion 121 may be designed in a specific shape such that the closer to the second fixed-guide-side support portion 122, the more away from the center of gravity of the fixed-guide-side driven sprocket S1 supported by the first fixed-guide-side support portion 121 and second fixed-guide-side support portion 122.
[0049] In the case particularly where the chain guide assembly frame 100 has a predetermined standard design, cutting the first fixed-guide-side sprocket holding portion 121 into the above-described shape is all that is necessary to prevent accidental detachment of the fixed-guide-side driven sprocket S1 from the fixed-guide-side sprocket holding portion 120 in various different product specifications. Thus the operation of mounting the chain guide assembly to the engine can be carried out in an efficient manner.
[0050] Even when the chain CH is not passed over the sprockets yet, the fixed-guide-side driven sprocket S1 in an erected state does not detach from the fixed-guide-side sprocket holding portion 120, as long as the vector of the gravity that acts on the fixed-guide-side driven sprocket S1 is pointing between the first contact point 121a and the second contact point 122a.
[0051] The pivoting-guide-side driven sprocket S2 also moves slightly outward of the pivoting-guide-side sprocket holding portion 130 when the chain CH becomes slack. However, the pivoting-guide-side driven sprocket S2 is supported not only by the first pivoting-guide-side support portion 131 but also by the chain CH from below in the part along the pivoting chain guide 112. Therefore, the pivoting-guide-side driven sprocket S2 is unlikely to detach from the pivoting-guide-side sprocket holding portion 130 in an erected state.
[0052] While one embodiment of the present invention has been described in detail, the present invention is not limited to the embodiment described above and may be carried out with various design changes without departing from the scope of the present invention set forth in the claims.
[0053] While the embodiment described above mentions processing of the first fixed-guide-side support portion only to make the positions of the first contact point and second contact point adjustable, the way the positions of the first contact point and second contact point are adjusted is not limited to this example. The positions of the first contact point and second contact point may be adjusted by processing the second fixed-guide-side support portion alone, for example. Alternatively, a third contact point that supports the fixed-guide-side driven sprocket at the same time with the first contact point and second contact point may be provided.
[0054] In the embodiment described above, the fixed-guide-side sprocket holding portion includes a third fixed-guide-side support portion and is configured to hold the fixed-guide-side driven sprocket between the chain and the third fixed-guide-side support portion. The configuration of the fixed-guide-side sprocket holding portion is not limited to this example. The third fixed-guide-side support portion may not be provided, for example, i.e., the fixed-guide-side driven sprocket may be held between the chain and the first fixed-guide-side support portion.
[0055] In the embodiment described above, a mounting hole is provided near the second fixed-guide-side support portion. The number and position of mounting holes are not limited to this example. A mounting hole may be provided, for example, near the first pivoting-guide-side support portion.
[0056] The above-described embodiment in which a top guide is provided on the upper surface of the main body and a fixed chain guide is provided on a side face of the main body is not intended to limit the configuration of the chain guide assembly frame to this example. The top guide may be omitted, for example, or the fixed chain guide may be omitted.